A method for receiving a signal or transmitting a signal on a plurality of component carriers (CCs) in a wireless communication system, according to an embodiment of the present invention, is performed by means of a terminal and comprises the steps of: in order to receive multiple CC downlink control information scheduling one or more CCs, blind decoding the multiple CC downlink control information in a search space on a particular CC; and, on the basis of the received multiple CC downlink control information, transmitting an uplink control or data channel or receiving a downlink data channel on one or more of the CCs, wherein the received multiple CC downlink control information can comprise transmission mode (TM) dependent multiple CC downlink control information or fallback multiple CC downlink control information.
Legal claims defining the scope of protection, as filed with the USPTO.
1. A method for a terminal receiving or transmitting a signal on a plurality of component carriers (CCs) in a wireless communication system, the method comprising: performing blind decoding on multi-CC downlink control information in a search space of a specific CC, wherein the multi-CC downlink control information includes information on scheduling K number of CCs among N number of the plurality of CCs; and receiving a downlink data channel or transmitting an uplink control channel or a data channel on the K number of CCs according to the multi-CC downlink control information, wherein the multi-CC downlink control information includes an N-bits bitmap, a K number of scheduling information fields, and UL grant-related scheduling information, wherein each of the N-bits bitmap informs whether each of the N number of the plurality of CCs is scheduled, wherein each of the K number of scheduling information fields is scheduling information on each of the K number of CCs, wherein the UL grant-related scheduling information is scheduling information on a UL CC associated with a DL CC scheduled by the multi-CC downlink control information, wherein the multi-CC downlink control information comprises transmission mode (TM)-dependent multi-CC downlink control information or fallback multi-CC downlink control information, wherein the multi-CC downlink control information is received when a number of the plurality of CCs is equal to or greater than a predetermined number, and wherein N and K are positive integers, N is divisible by K, and N≥K≥2.
2. The method of claim 1 , further comprising: additionally receiving single-CC downlink control information for a primary CC, when downlink control information for the primary CC is not contained in the multi-CC downlink control information.
3. The method of claim 1 , further comprising: receiving information on the specific CC on which the blind decoding is to be performed.
4. The method of claim 1 , further comprising: discarding a TM-dependent single CC downlink control information, when both the TM-dependent multi-CC downlink control information and the TM-dependent single CC downlink control information are received for the specific CC among the plurality of CCs at a specific timing.
5. The method of claim 1 , wherein the K number of CCs varies per subframe.
6. The method of claim 1 , wherein the multi-CC downlink control information further comprises information on a resource allocation for the K number of CCs.
7. The method of claim 1 , wherein the multi-CC downlink control information further comprises a virtual cyclic redundancy check (CRC) bit field.
8. The method of claim 1 , wherein the multi-CC downlink control information comprises an ACKnowledgement/Negative ACK (ACK/NACK) resource indicator (ARI) field being independent from a transmit power control command field, and wherein the ARI field indicates a resource used for ACK/NACK feedback for a non-primary-CC scheduled by the multi-CC downlink control information.
9. A terminal configured to receive or transmit a signal on a plurality of component carriers (CCs) in a wireless communication system, the terminal comprising: a transmitter; a receiver; and a processor that controls the transmitter and the receiver, the processor performs blind decoding on multi-CC downlink control information in a search space of a specific CC, wherein the multi-CC downlink control information includes information on scheduling K number of CCs among N number of the plurality of CCs, and receives a downlink data channel or transmits an uplink control channel or a data channel on the K number of CCs according to the multi-CC downlink control information, wherein the multi-CC downlink control information includes an N-bits bitmap, a K number of scheduling information fields, and UL grant-related scheduling information, wherein each of the N-bits bitmap informs whether each of the N number of the plurality of CCs is scheduled, wherein each of the K number of scheduling information fields is scheduling information on each of the K number of CCs, wherein the UL grant-related scheduling information is scheduling information on a UL CC associated with a DL CC scheduled by the multi-CC downlink control information, wherein the multi-CC downlink control information comprises transmission mode (TM)-dependent multi-CC downlink control information or fallback multi-CC downlink control information, wherein the multi-CC downlink control information is received when a number of the plurality of CCs is equal to or greater than a predetermined number, and wherein N and K are positive integers, N is divisible by K, N≥K≥2.
10. The terminal of claim 9 , wherein the processor additionally receives single-CC downlink control information for the primary CC, when downlink control information for a primary CC is not contained in the multi-CC downlink control information.
11. The terminal of claim 9 , wherein the processor receives information on the specific CC on which the blind decoding is to be performed.
12. The terminal of claim 9 , wherein the processor discards a TM-dependent single CC downlink control information, when both the TM-dependent multi-CC downlink control information and the TM-dependent single CC downlink control information are received for the specific CC among the plurality of CCs at a specific timing.
13. The terminal of claim 9 , wherein the K number of CCs varies per subframe.
14. The terminal of claim 9 , wherein the multi-CC downlink control information further comprises information on a resource allocation for the K number of CCs.
15. The terminal of claim 9 , wherein the multi-CC downlink control information further comprises a virtual cyclic redundancy check (CRC) bit.
16. The terminal of claim 9 , wherein the multi-CC downlink control information comprises an ACKnowledgement/Negative ACK (ACK/NACK) resource indicator (ARI) field being independent from a transmit power control command field, and wherein the ARI field indicates a resource used for ACK/NACK feedback for a non-primary-CC scheduled by the multi-CC downlink control information.
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August 9, 2016
June 23, 2020
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